Biochemical and behavioural responses of the endobenthic bivalve Scrobicularia plana to silver nanoparticles in seawater and microalgal food

Because of their bactericidal effects, Ag nanoparticles (Ag NPs) have promising industrial development but could lead to potential ecological risks. The aim of this study was to examine the uptake and effect of silver (soluble or as lactate Ag NPs of 40nm) at low concentrations (10μgL−1) in the endo...

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Veröffentlicht in:Ecotoxicology and environmental safety 2013-03, Vol.89, p.117-124
Hauptverfasser: Buffet, Pierre-Emmanuel, Pan, Jin-Fen, Poirier, Laurence, Amiard-Triquet, Claude, Amiard, Jean-Claude, Gaudin, Pierre, Faverney, Christine Risso-de, Guibbolini, Marielle, Gilliland, Douglas, Valsami-Jones, Eugenia, Mouneyrac, Catherine
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Sprache:eng
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Zusammenfassung:Because of their bactericidal effects, Ag nanoparticles (Ag NPs) have promising industrial development but could lead to potential ecological risks. The aim of this study was to examine the uptake and effect of silver (soluble or as lactate Ag NPs of 40nm) at low concentrations (10μgL−1) in the endobenthic bivalve Scrobicularia plana exposed, for 14 days, directly (water) or via the diet (microalgae). The stability of Ag NPs in seawater was examined using dynamic light scattering. Release of soluble Ag from Ag NPs in the experimental media was quantified by using diffusive gradient in thin film. Bioaccumulation of Ag in bivalves was measured by electrothermal atomic absorption spectrometry. Behavioural and biochemical biomarkers were determined in bivalves. Aggregation of Ag NPs and the release of soluble Ag from Ag NPs were observed in the experimental media. For both forms of Ag, bioaccumulation was much more important for waterborne than for dietary exposure. The response of oxidative stress biomarkers (catalase, glutathion S-transferase, superoxide dismutase) was more important after dietary than waterborne exposure to Ag (soluble and NPs). These defences were relatively efficient since they led to a lack of response of damage biomarkers. Burrowing was not affected for bivalves exposed directly or through the diet to both Ag forms but feeding behaviour was impaired after 10 days of dietary exposure. Since no differences of responses to Ag either soluble or nanoparticulate were observed, it seems that labile Ag released from Ag NPs was mainly responsible for toxicity. ► No differences were observed in responses to Ag either soluble or nanoparticulate. ► Induction of oxidative stress was observed in Scrobicularia plana exposed to both Ag forms, ► Defences were more important after dietary than after waterborne exposure.
ISSN:0147-6513
1090-2414
DOI:10.1016/j.ecoenv.2012.11.019